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- W1489416260 abstract "Thrust wedge/foreland basin systems are intimately coupled through the flexural support of mountain topography to form the foreland basin and via the redistribution of mass through erosion and sedimentation. The tectonic boundary conditions for small collisional mountain ranges can be approximated by doubly vergent thrust wedges that separate foreland basins developed on the pro-side of the range (pro-foreland basins), to those on the retro-side (retro-foreland basins); these two basin types have contrasting stratigraphic characteristics. In the absence of subsurface loads, the subsidence of foreland basins is primarily determined by the subduction velocity of the downgoing plate, plus the outward growth of the mountain topography. Pro-foreland basins integrate both these components, whereas retro-foreland basins do not overlie a subducting plate, and hence are solely driven by the growth of the thrust wedge. Thrust wedges may grow to a topographic steady state, or may even contract. During steady state, pro-foreland basins may continue to subside due to continued subduction, but retro-foreland basin subsidence ceases, or may switch to relative basin uplift if the range is contracting. Localized erosion of thrust wedges results from the tectonic asymmetry of the system, and the orographic enhancement of precipitation; this has implications for sediment flux and source in foreland basins. Sediment accumulation on thrust wedges can cause stabilization of the underlying portion of the wedge, thus redirecting deformation elsewhere in the range. The response times of mountain landscapes to climatic and tectonic perturbations determine the degree of coupling between tectonic and surface processes in the system; typical response times range from 0.5 to 2.0 Myr." @default.
- W1489416260 created "2016-06-24" @default.
- W1489416260 creator A5041456040 @default.
- W1489416260 date "2012-01-30" @default.
- W1489416260 modified "2023-09-26" @default.
- W1489416260 title "Thrust Wedge/Foreland Basin Systems" @default.
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- W1489416260 doi "https://doi.org/10.1002/9781444347166.ch26" @default.
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